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Imaging of small particles using wide field confocal microscopy

机译:使用广角共聚焦显微镜对小颗粒成像

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Particle measurement is important in many applications such as the manufacture of drugs and paints, and aerosols. In bioimaging there is interest understanding the imaging of nanoparticles and subcellular scatterers. We present in this paper a wide field, phase measuring confocal microscope that can be used for such measurements. The wide field confocal response is obtained by illuminating both sample and reference arms of an intert'erometric microscope with nominally identical speckle patterns. When the speckle patterns are highly correlated the interference is significant. Contributions from out of focus planes result in uncorrelated speckle patterns and no interference. This provides a wide field confocal response. High speed measurements are enabled by parallel phase stepping using polarisation optics. We have also developed a vector diffraction microscope model, using Mie theory as a scattering function, to validate the images of small particles. Correctly scaling the amplitudes of the unscattered and scattered electric fields enables co-polar transmission imaging to be modelled. Finally it is demonstrated that the phase is a more sensitive measurement of particle size than the amplitude.
机译:颗粒测量在许多应用中都很重要,例如药物和油漆的生产以及气雾剂。在生物成像中,有兴趣了解纳米颗粒和亚细胞散射体的成像。我们在本文中介绍了可用于此类测量的广域相位测量共聚焦显微镜。广域共聚焦响应是通过以名义上相同的散斑图样照亮干涉式显微镜的样品臂和参考臂而获得的。当斑点图案高度相关时,干扰就很明显。来自焦平面外的贡献导致不相关的斑点图案并且没有干扰。这提供了广域共焦响应。使用偏振光学器件的平行相位步进可以实现高速测量。我们还开发了一个矢量衍射显微镜模型,使用Mie理论作为散射函数,以验证小颗粒的图像。正确缩放未散射和散射电场的幅度,可以对共极传输成像进行建模。最终证明,与振幅相比,相是对粒度更敏感的度量。

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